Study / S0C175QM22016-03-03

High-throughput discovery of post-transcriptional cis-regulatory elements

Erin M. Wissink, Elizabeth A. Fogarty, Andrew Grimson

About this study

Background: Post-transcriptional gene regulation controls the amount of protein produced from an individual mRNA by altering rates of decay and translation. Many sequence elements that direct post-transcriptional regulation have been found; in mammals, most such elements are located within the 3′ untranslated regions (3′UTRs). Comparative genomic studies demonstrate that mammalian 3′UTRs contain extensive conserved sequence tracts, yet only a small fraction corresponds to recognized elements, implying that many additional novel elements exist. Despite a variety of computational, molecular, and biochemical approaches, identifying functional 3′UTRs elements remains difficult. Results: We created a high-throughput cell-based screen that enables identification of functional post-transcriptional 3′UTR regulatory elements. Our system exploits integrated single-copy reporters, which are expressed and processed as endogenous genes. We screened many thousands of short random sequences for their regulatory potential. Control sequences with known effects were captured effectively using our approach, establishing that our methodology was robust. We found hundreds of functional sequences, which we validated in traditional reporter assays, including verifying their regulatory impact in native sequence contexts. Although 3′UTRs are typically considered repressive, most of the functional elements were activating, including ones that were preferentially conserved. Additionally, we adapted our screening approach to examine the effect of elements on RNA abundance, revealing that most elements act by altering mRNA stability. Conclusions: We developed and used a high-throughput approach to discover hundreds of post-transcriptional cis-regulatory elements. These results imply that most human 3′UTRs contain many previously unrecognized cis-regulatory elements, many of which are activating, and that the post-transcriptional fate of an mRNA is largely due to the actions of many individual cis-regulatory elements within its 3′UTR.

Full author list & citation

Erin M. Wissink, Elizabeth A. Fogarty, Andrew Grimson. High-throughput discovery of post-transcriptional cis-regulatory elements. 2016-03-03. https://doi.org/10.1186/s12864-016-2479-7

Experiments 2

E569AVNTS

Pilot random 8-mer post-transcriptional 3′-UTR screen

A random 8-nucleotide library inserted in the human IQGAP1 3′UTR was stably integrated as single-copy reporter constructs in Flp-In T-REx 293 cells. FACS isolated low- and high-GFP populations while dsRed controlled for reporter-locus transcription, and Illumina sequencing quantified 8-mer enrichment.

Sort-Seq / Flow-Seq MPRAHumanhg19
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E61HPG74O

Focused 3′-UTR 8-mer screen with GFP-bin sequencing

A focused library of 3,918 selected 8-nucleotide elements, including pilot candidates, known miRNA and RNA-binding-protein motifs, conserved elements, reverse complements, and controls, was integrated in the human IQGAP1 3′UTR reporter in Flp-In T-REx 293 cells. FACS separated five GFP-intensity bins under a dsRed transcriptional gate, and matched DNA and reporter-RNA sequencing quantified regulatory activity and RNA abundance.

Sort-Seq / Flow-Seq MPRAHumanhg19
Explore data

Raw source data 9 files

Original supplemental and deposited inputs retained for this study. Download files individually or together as a ZIP; nested folders are preserved. Source reuse terms apply, and sequencing reads may be omitted.

Download all 9 files (ZIP)GSE75135_8mer_array_all_samples.txt.gzGSM1943817_miRNAs_FLP_cells.txt.gzsupplemental_MOESM12_miRNA_expression_scores.xlssupplemental_MOESM13_RBP_motifs_tested.xlssupplemental_MOESM17_primers.xlssupplemental_MOESM18_barcoded_sequencing_reads.xlssupplemental_MOESM3_pilot_8mer_read_counts.xlssupplemental_MOESM4_main_8mer_categories.xlssupplemental_MOESM9_main_8mer_read_counts_scores.xls

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